Pharmacokinetic functions of human induced pluripotent stem cell-derived small intestinal epithelial cells.


Journal

Drug metabolism and pharmacokinetics
ISSN: 1880-0920
Titre abrégé: Drug Metab Pharmacokinet
Pays: England
ID NLM: 101164773

Informations de publication

Date de publication:
Aug 2020
Historique:
received: 30 01 2020
revised: 20 04 2020
accepted: 20 04 2020
pubmed: 12 7 2020
medline: 1 1 2021
entrez: 12 7 2020
Statut: ppublish

Résumé

To develop a novel intestinal drug absorption system using intestinal epithelial cells derived from human induced pluripotent stem (iPS) cells, the cells must possess sufficient pharmacokinetic functions. However, the CYP3A4/5 activities of human iPS cell-derived small intestinal epithelial cells prepared using conventional differentiation methods is low. Further, studies of the CYP3A4/5 activities of human iPS-derived and primary small intestinal cells are not available. To fill this gap in our knowledge, here we used forskolin to develop a new differentiation protocol that activates adenosine monophosphate signaling. mRNA expressions of human iPS cell-derived small intestinal epithelial cells, such as small intestine markers, drug-metabolizing enzymes, and drug transporters, were comparable to or greater than those of the adult small intestine. The activities of CYP3A4/5 in the differentiated cells were equal to those of human primary small intestinal cells. The differentiated cells had P-glycoprotein and PEPT1 activities equivalent to those of Caco-2 cells. Differentiated cells were superior to Caco-2 cells for predicting the membrane permeability of drugs that were absorbed through a paracellular pathway and via drug transporters. In summary, here we produced human iPS cell-derived small intestinal epithelial cells with CYP3A4/5 activities equivalent to those of human primary small intestinal cells.

Identifiants

pubmed: 32651148
pii: S1347-4367(20)30362-1
doi: 10.1016/j.dmpk.2020.04.334
pii:
doi:

Substances chimiques

Alkanesulfonic Acids 0
Cyclosporins 0
Dipeptides 0
Morpholines 0
glycylsarcosine 29816-01-1
2-(N-morpholino)ethanesulfonic acid 2GNK67Q0C4
Digoxin 73K4184T59
valspodar Q7ZP55KF3X
Ibuprofen WK2XYI10QM

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

374-382

Informations de copyright

Copyright © 2020 The Japanese Society for the Study of Xenobiotics. Published by Elsevier Ltd. All rights reserved.

Déclaration de conflit d'intérêts

Declaration of competing interest The authors have declared no conflicts of interest.

Auteurs

Tomoki Kabeya (T)

Department of Clinical Pharmacy, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan.

Shinji Mima (S)

Bioscience & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, Japan.

Yuki Imakura (Y)

Bioscience & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, Japan.

Toshihide Miyashita (T)

Bioscience & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, Japan.

Izumi Ogura (I)

Bioscience & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, Japan.

Tadanori Yamada (T)

Bioscience & Engineering Laboratory, Research & Development Management Headquarters, FUJIFILM Corporation, Japan.

Tomoya Yasujima (T)

Department of Biopharmaceutics, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan.

Hiroaki Yuasa (H)

Department of Biopharmaceutics, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan.

Takahiro Iwao (T)

Department of Clinical Pharmacy, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan. Electronic address: tiwao@phar.nagoya-cu.ac.jp.

Tamihide Matsunaga (T)

Department of Clinical Pharmacy, Graduate School of Pharmaceutical Sciences, Nagoya City University, Nagoya, Japan.

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Classifications MeSH